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AOD不锈钢渣粉化机理及抑制粉化实验研究 被引量:2

Analysis of Efflorescence Mechanism and Experimental Research on Prevention of Efflorescence of AOD Stainless Steel Slag
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摘要 分析了AOD不锈钢渣的粉化机理,并通过添加石英砂调整渣碱度和添加硼砂渣改性处理对抑制AOD不锈钢冷却过程中的粉化问题进行了实验研究。研究认为,2CaO·SiO2相由α-C2S相向γ-C2S相的转变.是不锈钢渣冷却过程中导致粉化、扬尘的主要原因。通过添加石英砂将AOD渣碱度由2.0调整到1.5以下,可以抑制AOD不锈钢渣的粉化。该方法成本低,但配加量需达15%,加大了工业化难度;采用配加微量硼砂的改性方式.不仅可有效地抑制AOD不锈钢渣粉化、扬尘,而且加入量仅为0.5%~0.8%.便于实现工业化,但成本较高。 The efflorescence mechanism of the slag was analyzed in detail and experimental research on prevention of efflorescence of AOD stainless steel slag by adjusting the alkalinity of the slag and modification treatment adding the quartz sand and borax were carried out in respectively. The main reason of the serious efllorescence and dusting problem during the cooling process of AOD stainless steel slag is attributed to the 2CaO-SiO2 phase transformation from α'-C2S to γ-C2S. Adjusting the alkalinity of the AOD stainless steel slag from 2 to 1.5 by adding quartz sand can prevent from the efflorescence of the slag, and the method is low cost. But the adding amount must arrive at 15% which increase industrialized difficulty. The method of modification treatment adding borax not only can effectively suppress efflorescence and dusting of AOD stainless steel slag, and the adding amount is only 0.5%-0.8%. The method is easy to achieve industrialization, but the cost is very high.
出处 《中国资源综合利用》 2015年第7期30-34,共5页 China Resources Comprehensive Utilization
关键词 不锈钢渣 粉化 碱度 石英砂 硼砂 改性处理 AOD stainless steel slag efflorescence alkalinity quartz sand borax modification treatment
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  • 1席北斗,王琪,张晓萱,姜永海.不同浸出毒性鉴别方法对垃圾焚烧飞灰浸出毒性鉴别的适宜性[J].环境科学研究,2005,18(z1):17-22. 被引量:21
  • 2韩伟.不锈钢渣湿式处理工艺及在宝钢的应用[J].宝钢技术,2010,3(3):30-33. 被引量:14
  • 3国家环境保护总局.水和废水监测分析方法[M].4版.北京:中国环境科学出版社,2002:243—284.
  • 4国家环境保护总局.GB5085.3-1996危险废物鉴别标准浸出毒性鉴别[S].北京:中国标准出版社,1996.
  • 5田雅婷.2006年我国不锈钢产量跃居世界第一[N].光明日报,2007-02-13(4).
  • 6Shen H T, Forssberg E, NordstrOm U. Physicochemical and mineralogical properties of stainless steel slags oriented to metal recovery[J]. Resources Conservation and Recycling, 2004, 40(3): 245- 271.
  • 7Van Dessel J. Recycling and valorisation of stainless steel slags[ R]. Brussels: Belgian Building Research Institute, 2002.
  • 8De Bock L, Van den Bergh H. Stainless steel slags in hydraulic bound mixtures for road construction 2 : case studies in Belgium[ R]. Belgium: Belgian Road Research Centre (BRRC), 2004.
  • 9Shen H T, Forssberg E. An overview of recovery of metals from slags [ J]. Waste Manag,2003, 23 (10) : 933-949.
  • 10Proctor D M, Fehling K A, Shay E C, et al. Physical and chemical characteristics of blast furnace, basic oxygen furnace, and electric arc furnace steel industry slags[J]. Environ Sci Technol, 2000, 34 (8) : 1576-1582.

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